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风电变流技术
★ 5.0
基于电网强度的电压-频率协同支撑方法
Frequency-Voltage Synergy Support Method Based on Grid Strength for VSC-MTDC Integrated Distributed Offshore Wind Farms
| 作者 | Xubin Liu · Nanxing Huang · Yuan Liu · Liang Yuan · Mei Su · Canbing Li |
| 期刊 | IEEE Transactions on Power Systems |
| 出版日期 | 2025年1月 |
| 技术分类 | 风电变流技术 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 海上风电场 频率电压协同支持策略 分布式协调策略 功率量化策略 自适应功率协调策略 |
语言:
中文摘要
随着装机容量不断增加,新兴的海上风电场(OWFs)对陆上电网的频率和电压稳定性的影响日益增大。考虑分布式海上风电场的支撑能力和陆上并网节点的抗干扰能力,使海上风电场参与频率和电压调节是一项挑战。为应对这一挑战,本文提出了一种适用于基于电压源换流器的多端直流(VSC - MTDC)集成分布式海上风电场的频率 - 电压协同支撑(FVSS)策略,该策略包含四个部分:1)为风力发电机组(WTs)开发了一种采用主从一致性算法的分布式协调策略,以公平地提供支撑功率;2)建立了一种有功/无功功率量化策略,该策略考虑了本地负载的等效阻抗特性和线路潮流影响,用于确定接地侧电压源换流器(GSVSCs)进行频率支撑(FS)和电压支撑(VS)的功率需求;3)实施了频率强度量化(FSQ)和电压强度量化(VSQ)策略,以表征接地侧电压源换流器的抗干扰能力;4)提出了一种考虑频率强度量化和电压强度量化的自适应功率协调策略,以实现频率支撑/电压支撑的有功/无功功率分配。大量仿真结果验证了所提出的频率 - 电压协同支撑策略在不同场景下的有效性和正确性。
English Abstract
The emerging offshore wind farms (OWFs) with increasing installed capacity have an increasing impact on the frequency and voltage stability of onshore power grids. It is a challenge to enable OWFs to participate in frequency and voltage regulation considering the support ability of distributed OWFs and the anti-disturbance ability of onshore grid-connected nodes. To address this challenge, a frequency-voltage synergy support (FVSS) strategy for VSC-MTDC integrated distributed OWFs is proposed with four components: 1) A distributed coordination strategy with leader-follower consensus algorithm is developed for WTs to fairly provide support power; 2) An active/reactive power quantification strategy, which considers equivalent impedance characteristics of local loads and line power flow influence, is established for power requirements of ground side voltage source converters (GSVSCs) for frequency support (FS) and voltage support (VS); 3) A frequency strength quantification (FSQ) and voltage strength quantification (VSQ) strategies are conducted to characterize the anti-disturbance ability of GSVSC; 4) An adaptive power coordination strategy, which considers FSQ and VSQ, is proposed to achieves active/reactive power allocation for FS/VS. Extensive simulation results have validated the effectiveness and correctness of the proposed FVSS under different scenarios.
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SunView 深度解读
该频率-电压协同支撑方法对阳光电源的储能和风电变流产品具有重要参考价值。可直接应用于ST系列储能变流器和风电变流器的弱电网适应性优化,通过自适应调节有功无功控制策略,提升产品在弱电网条件下的并网性能。该方法与阳光电源现有的构网型GFM控制技术相结合,可进一步增强储能变流器的电网支撑能力。建议在PowerTitan大型储能系统中集成该技术,优化系统在海上风电配套储能等场景下的稳定性控制。这对提升阳光电源在海上风电及储能市场的竞争力具有积极意义。